Leisingera methylohalidivorans: METH_12875
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Entry
METH_12875 CDS
T02961
Name
(GenBank) hypothetical protein
Organism
lmd
Leisingera methylohalidivorans
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PilP
Motif
Other DBs
NCBI-ProteinID:
AHD01452
UniProt:
V9VX39
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Position
2476474..2479116
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AA seq
880 aa
AA seq
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MKPAFALSLSSDGIELIYRAKDGWRSVGGTPFDADDLPAALAAMREDAQRLAPGEIFCKL
VLPDNQIRYLTAETGDLPAEARIEAARQALEGTTPYPVDELAFDISIEGSRTHVAAVALE
TLDEAETFAVEHGFGPVSFVAAPEASGFRGEPFFGTTRAIRGTEVEPDDTAVKIIGPAAL
APPRTEDSADTGAAPALTGDSTVPATVAAVTEPLAEPAGPEALAEAEEMAAAAKQMPETN
DAPQAARKDGPAESPAKPAGGAEDPAQDVPGSAGQQAKAGPAARATAPADPVPVSAAPSP
VPPAPLAAAHQPPAAPAAVKPAAAAIAVKKPDTAVLSASRPPVPPTPLAVSAPPAGTVPP
QPIPPAPAVMRDTAPAAAAPAASQSPAPQKAAEGKPRYLGVILTAVLLLFMATVAVWAVF
GEGGFFAAAPEQDSGPAPAPAVSSEDRQPEAGAPRPAAPAAADGPATETAPAAIAPQVSV
LADQPDPGLQETGAAPAEGETLGQTALADGSEADGLPSAEDEAAADGAELPEEGTDTAFL
DPRALQPGGAAESAAASAEPEAEEPLDELAQAARYAATGVWPVAPGLGDIPAAPRLDELY
TASVDRTDIAADAVALPQPDAFAGDDEPGSVASPAVAGSAFDLDARGLVKATPGGTLNPD
GITVYLGRPAKVPPRAPDRSDPAAEALAEEVARNQVLSRKRPKARPADLEEQVERAQHGG
LSRAELASLRPRQRPASLKPAEEEQLPVTAQAIAASAVPRKRPSNFANLVDRARRNAQNQ
VQTAAAVPAAAAAAAPRIPTAASVARRATVGNAINLRKLNLIGVYGTASDRRALVRLPSG
RYKKVQVGDRIDGGRVIAIGESRLQYQKGGRNRTLEMPKG
NT seq
2643 nt
NT seq
+upstream
nt +downstream
nt
atgaaaccggcttttgctctttcgctttcctctgatggcatcgaactgatttaccgggcc
aaggacggctggcgcagtgtgggcggcaccccgtttgacgccgatgatctgcccgctgcg
ctggcagcgatgcgcgaggatgcgcagcggctggcgcccggggagatcttctgcaagctg
gtcctgcccgataaccagatccgctatctgacagcggaaaccggcgatctgcccgctgag
gcgcggatcgaagcggcccgccaagcgctggagggcacaaccccttatccagtggatgag
ctggcctttgacatttccatcgagggcagccggacccatgttgctgccgtggcgctggaa
accctggacgaggctgagacctttgcggtcgagcacgggttcggcccggtcagttttgtc
gcggcgccggaagccagcggctttcggggcgaacccttcttcggcaccacgcgggcgatc
cgcggcaccgaggttgaaccggacgatacggctgtcaagataatcgggcctgctgcactg
gcgccgccccggaccgaagacagcgcggataccggcgcagccccggccctgaccggagac
agcacagtaccggcaacggttgccgccgttacggaacccctggcagagcccgcagggccg
gaagctcttgctgaggcggaagagatggctgcagccgccaaacaaatgcctgagacgaat
gatgccccgcaggccgcccgcaaggacggcccggcggaatcgcctgccaagcccgccggg
ggggcggaagacccggcgcaggatgttccgggttctgccggtcaacaggccaaggccggc
cccgcggcacgtgcaaccgcgccggcggatcctgtgccggtctcagccgcgccatccccg
gtgccccctgcgccgctggcggccgcgcaccagccgccggcagcgcccgccgccgtgaaa
ccggcggcggcagcaattgcggtcaaaaaaccggataccgcagtcctttccgcgtcccgc
ccgccagtgccgccgacccccttggcggtttccgcgccgccggccggcacggttccacct
cagccaattccgccggcgccggccgtcatgcgggacaccgccccggcagccgccgcgccc
gcggcctcacagtcgccggcccctcaaaaggccgccgaaggcaagccacgctatctgggc
gtgatcctgacggctgttctgctgctgttcatggcaacagttgcggtctgggcagttttt
ggcgagggcgggttcttcgccgcggccccggaacaggattccggcccggcgcctgcccct
gcggtcagctccgaagaccggcagccggaggcaggcgccccccggccggccgcccccgcc
gccgcagacggccccgccacggaaaccgcccctgccgccatcgcaccgcaggtgagcgtg
ctggcggaccagcccgatcccggcctgcaggaaaccggcgcagcaccggcagagggggaa
accctggggcaaactgcgctggctgacggcagtgaagcagacgggcttccgtcggccgag
gatgaagccgccgccgatggtgcagaactgcccgaagagggaacggataccgcctttttg
gacccacgtgccctgcagccgggcggcgcagcggaaagcgcagctgcatccgctgaaccc
gaggcggaggaaccgctggatgaactggcgcaggccgcgcgctatgccgcgaccggggtt
tggccggttgcccccggcctgggcgacatccccgccgcgccccgcctggacgagctttat
accgcctcggtcgaccgcacggatattgcagccgatgccgtcgcgctgccgcagccggac
gcctttgccggggatgacgaacccggctctgttgcctctcccgccgtggcaggatccgcg
tttgatctggacgcgcgcggattggtcaaggccacccccggaggcacgctcaaccccgat
ggcatcacggtttaccttggccgtccggcaaaagtgccgccgcgcgcaccggatcgcagc
gaccccgccgccgaggcactggccgaagaagtggcgcgcaatcaggtgctgtcgcgcaaa
cgccccaaggcgcggcctgcggatctggaggaacaggtggaacgggcgcagcatggcggg
ctcagccgggctgaactggccagcttgcgcccgcgccagcggcccgccagcctgaagccc
gcagaagaagagcagctgccggtcaccgcccaggccattgccgcttcggcggtgccacgc
aaacggccctccaattttgccaatctggttgatcgcgcccggcgcaatgcgcagaaccag
gtccagaccgccgccgccgtgcccgctgccgccgccgcggcggcgccgcgtatcccgaca
gccgcatcggttgcccgacgcgccactgtcggcaatgccatcaacctgcgcaagctaaac
ctgatcggggtctatggcaccgcgtcggaccgccgcgcattggtccggctgccctcgggc
cgctacaagaaggtgcaagtcggcgaccggatcgacggcggccgggtgattgcaatcggc
gaaagccggttgcagtatcagaaaggcggccgcaaccgcaccctggaaatgcccaagggc
tag
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